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Application of Additional Medial Plate in Treatment of Proximal Humeral Fractures With Unstable Medial Column

机译:内侧钢板治疗不稳定型肱骨近端骨折的应用

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摘要

The purpose of this study was to use finite element analysis to compare the biomechanical characteristics after lateral locking plate (LLP) or LLP with a medial anatomical locking plate (LLP-MLP) fixation of proximal humeral fractures with an unstable medial column.First, a 3-dimensional, finite element analysis model was developed. Next, LLP and LLP-MLP implants were instrumented into the proximal humeral fracture models. Compressive and rotational loads were then applied to the humerus model to determine the biomechanical characteristics. Both normal and osteoporotic proximal humerus fractures were simulated using 2 internal fixation methods each under 7 loading conditions. To assess the biomechanical characteristics, the construct stiffness, fracture micromotion, and stress distribution on the implants were recorded and compared.The LLP-MLP method provided both lateral and medial support that reduced the stress on the LLP and the amount of displacement in the fracture region. In contrast, the LLP method resulted in more instability in the medial column and larger magnitudes of stress. In osteoporotic bone, the LLP was more inclined to fail than LLP-MLP.The LLP-MLP method provides a strong support for the medial column and increases the stability of the region surrounding the fracture.
机译:本研究的目的是使用有限元分析来比较外侧锁定板(LLP)或LLP与内侧解剖锁定板(LLP-MLP)固定肱骨近端骨折的肱骨近端骨折后的生物力学特征。开发了三维有限元分析模型。接下来,将LLP和LLP-MLP植入物植入肱骨近端骨折模型中。然后将压缩载荷和旋转载荷应用于肱骨模型,以确定生物力学特征。正常和骨质疏松性肱骨近端骨折均采用两种内固定方法在7种负荷条件下模拟。为了评估生物力学特性,记录并比较了种植体的结构刚度,骨折微动和应力分布.LLP-MLP方法同时提供了外侧和内侧支撑,从而减少了LLP上的应力和骨折移位量区域。相反,LLP方法导致内侧色谱柱更加不稳定,并且应力强度更大。在骨质疏松性骨中,LLP比LLP-MLP更倾向于失败.LLP-MLP方法为内侧柱提供了强大的支持,并增加了骨折周围区域的稳定性。

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